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DNA damage by sulfite autoxidation catalyzed by cobalt complexes

机译:钴配合物催化亚硫酸盐自氧化对DNA的损伤

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DNA damage was investigated in the presence of sulfite, dissolved oxygen and cobalt(II) complexes with glycylglycylhistidine, glycylhistidyllysine, glycylglycyltyrosylarginine and tetraglycine. These studies indicated that only Co(II) complexed with glycylglycylhistidine (GGH) induced DNA strand breaks at low sulfite concentrations (1-80 mu M) via strong oxidants formed in the reaction. In the presence of the other complexes, some damage occurred only in the presence of high sulfite concentrations (0.1-2.0 mM) after incubation for 4 h. In the presence of GGH, Co(II) and dissolved O-2, DNA damage must involve a reactive high-valent cobalt complex. The damaging effect was increased by adding S(IV), due to the oxysulfur radicals formed as intermediates in S(IV) autoxidation catalyzed by the complex. SO3 center dot-S-, HO center dot and H-center dot radicals were detected by EPR-spin trapping experiments with DMPO (5,5-dimethyl-1-pyrroline N-oxide). The results indicate that Co(II) binds O2 in the presence of GGH, and leads to the formation of a DMPO-HO center dot adduct without first forming free superoxide or hydroxyl radical, supporting the participation of a reactive high-valent cobalt complex.
机译:在亚硫酸盐,溶解氧和钴(II)与糖基糖基组氨酸,糖基组氨酸赖氨酸,糖基酪氨酰精氨酸和四甘氨酸复合物存在下,研究了DNA损伤。这些研究表明,只有Co(II)与甘氨酰甘氨酰组氨酸(GGH)络合,才能通过反应中形成的强氧化剂在低亚硫酸盐浓度(1-80μM)下诱导DNA链断裂。在存在其他复合物的情况下,孵育4小时后,仅在高亚硫酸盐浓度(0.1-2.0 mM)的情况下才会发生一些损坏。在存在GGH,Co(II)和溶解的O-2的情况下,DNA损伤必须涉及反应性的高价钴配合物。通过添加S(IV)增强了破坏作用,这是由于在配合物催化的S(IV)自氧化中作为中间体形成的氧硫自由基。通过使用DMPO(5,5-二甲基-1-吡咯啉N-氧化物)的EPR自旋捕获实验检测到SO3中心点S-,HO中心点和H中心点自由基。结果表明,Co(II)在GGH存在下与O2结合,并导致形成DMPO-HO中心点加合物,而没有首先形成游离的超氧化物或羟基自由基,从而支持了反应性高价钴络合物的参与。

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